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Fast iterative image reconstruction for 3D PET and its extension to time-of-flight PET
负责人:
关键词:
Electrical Engineering Fourier rebinning fully 3D PET inverse rebinning iterative reconstruction time-of-flight PET
DOI:
doi:10.25549/usctheses-m1623
摘要:
ter quantitative results compared to analytical reconstruction methods.However, the iterative methods involve huge computational loads, particularly for fully 3D PET
Data from: Super-resolution imaging of a 2.5 kb non-repetitive DNA in situ in the nuclear genome using molecular beacon probes
负责人:
关键词:
fluorescence in situ hybridization;stochastic optical reconstruction?microscopy;super-resolution imaging;molecular beacons;non-repetitive DNA
DOI:
doi:10.5061/dryad.126k9
摘要:
or mouse genome, respectively, demonstrating the capability of MB-based FISH in visualizing a so far shortest and non-repetitive genomic sequence in 3D at supe
Data from: Are 2D space-use analyses adapted to animals living in 3D environments? A case study on a fish shoal
负责人:
Vivancos, Aurélien
关键词:
multidimensional analysis intra-specific competition kernels density analysis
DOI:
doi:10.5061/dryad.q0n31
摘要:
Methodologies enabling the monitoring of animal movement and behavior in 3-dimensions (3D; x, y, z, the latter accounting for the vertical dimension
Data from: From the cover: three-dimensional (3d) heparg spheroid model with physiologically relevant xenobiotic metabolism competence and hepatocyte
负责人:
关键词:
DOI:
doi:10.5061/dryad.s05v3
摘要:
t cause liver injury and metabolism-dependent toxicity. This platform combines the well-documented impact of 3D culture configuration for improved tissue
Data from: Dragonflies use underdamped pursuit to chase conspecifics
负责人:
Lohmann, Amanda C.
关键词:
control guidance interception kinematics territoriality videography
DOI:
doi:10.5061/dryad.1hk66gf
摘要:
Pursuit is a common behavior exhibited by animals chasing prey, competitors, and potential mates. Because of their speed and maneuverability
Image registration with applications to multimodal small animal imaging
负责人:
关键词:
Electrical Engineering small animal imaging image registration mouse atlas structured light 3D surface profiling skull and scalp segmentation
DOI:
doi:10.25549/usctheses-m756
摘要:
rent modalities such as to employ both anatomical (MR, X-ray CT) and functional (PET, SPECT or optical imaging) information, and identifying
Antarctic petrel 3D flights, Svarthamaren, Antarctica (data from Tarroux et al. 2016)-reference-data
负责人:
University Of Konstanz
关键词:
airspeed animal foraging animal tracking Antarctica Antarctic Mesoscale Prediction System Antarctic petrel central place foraging drift flight height orientation
DOI:
doi:10.5441/001/1.q206rm6b/2
摘要:
in situations devoid of the confounding effect that, for instance, active foraging behaviour can have on movement patterns. We studied the Antarctic pet
Antarctic petrel 3D flights, Svarthamaren, Antarctica (data from Tarroux et al. 2016)
负责人:
University Of Konstanz
关键词:
airspeed animal foraging animal tracking Antarctica Antarctic Mesoscale Prediction System Antarctic petrel central place foraging drift flight height orientation
DOI:
doi:10.5441/001/1.q206rm6b/1
摘要:
in situations devoid of the confounding effect that, for instance, active foraging behaviour can have on movement patterns. We studied the Antarctic pet
Data from: Carnivory maintains cranial dimorphism between males and females: evidence for niche divergence in extant Musteloidea
负责人:
关键词:
Carnivora;sexual selection;3D geometric morphometrics;bite force;cranial shape;sexual dimorphism
DOI:
doi:10.5061/dryad.62517nb
摘要:
r social behavior and that the greatest degree of cranial size and bite force dimorphism were found in terrestrial carnivores. Because competition for terrestrial
Data from: Canopy height explains species richness in the largest clade of Neotropical lianas
负责人:
关键词:
climbers;environmental heterogeneity;liana-tree interaction;lidar;competition;species diversity;Bignoniaceae;3D vegetation structure
DOI:
doi:10.5061/dryad.11q00n4
摘要:
cies richness. We test to what extent canopy height (as proxy of 3D habitat structure), climate and soil interact to determine species richness in the largest clade

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